4.7 Article

Tailored Solid-State Carbohydrate Nanostructures Based on Star-Shaped Discrete Block Co-Oligomers

期刊

BIOMACROMOLECULES
卷 23, 期 9, 页码 3978-3989

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acs.biomac.2c00813

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资金

  1. JSPS [20H02792, 19H02769]
  2. JSPS Fund for the Promotion of Joint International Research [21KK0096]
  3. Asahi Glass Foundation
  4. Photoexcitonix Project (Hokkaido University)
  5. project of junior scientist promotion in Hokkaido University
  6. Creative Research Institute (Hokkaido University)

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Carbohydrate nanostructures with different morphologies can be fabricated using a star-shaped discrete block co-oligomer platform, which has great application potential in biomedical and nanofabrication fields.
Carbohydrates are key building blocks for advanced functional materials owing to their biological functions and unique material properties. Here, we propose a star-shaped discrete block co-oligomer (BCO) platform to access carbohydrate nanostructures in bulk and thin-film states via the microphase separation of immiscible carbohydrate and hydrophobic blocks (maltooligosaccharides with 1-4 glucose units and solanesol, respectively). BCOs with various star-shaped architectures and saccharide volume fractions were synthesized using a modular approach. In the bulk, the BCOs self-assembled into common lamellar, cylindrical, and spherical carbohydrate microdomains as well as double gyroid, hexagonally perforated lamellar, and Fddd network morphologies with domain spacings of & SIM;7 nm. In thin films, long-range-ordered periodic carbohydrate microdomains were fabricated via spin coating. Such controlled spatial arrangements of functional carbohydrate moieties on the nanoscale have great application potential in biomedical and nanofabrication fields.

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